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Parts-per-million level loading organocatalysed enantioselective silylation of alcohols

机译:百万分之几的醇负载量的有机催化对映选择性硅烷化反应

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摘要

The field of organocatalysis has blossomed over the past few decades, becoming an alternative to transition-metal catalysis or even replacing the realm of transition-metal catalysis. However, a truly powerful organocatalyst with a high turnover number (TON) and turnover frequency (TOF) while retaining high enantioselectivity is yet to be discovered. Similar to metal catalysis, extremely low catalyst loading (p.p.m. or p.p.b. levels) is the ultimate goal of the organocatalysis community. Herein we report a remarkable contribution in this context: 1?p.p.m. loading of a simple 1,1′-bi-2-naphthol-based organocatalyst was enough to achieve highly enantioselective silylation reactions of alcohols. The unprecedented TONs and excellent enantioselectivity are ascribed to the robustness of the catalyst and systematic cooperative hydrogen-bonding organocatalysis in a densely confined chiral space.
机译:在过去的几十年中,有机催化领域蓬勃发展,成为过渡金属催化的替代方法,甚至取代了过渡金属催化的领域。然而,尚未发现具有高周转数(TON)和周转频率(TOF)同时保持高对映选择性的真正有效的有机催化剂。与金属催化相似,极低的催化剂负载量(p.p.m.或p.p.b.b.)是有机催化领域的最终目标。在此,我们报告了这方面的杰出贡献:1?p.p.m。简单的1,1'-联-2-萘酚基有机催化剂的负载量足以实现醇的高度对映选择性甲硅烷基化反应。前所未有的TONs和出色的对映选择性归因于在密闭的手性空间中催化剂的稳健性和系统的协同氢键有机催化。

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